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Successive Multipath Interference Cancellation for CP-Free OFDM Systems

机译:无CP OFDM系统的连续多径干扰消除

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摘要

Traditional orthogonal frequency-division multiplexing (OFDM) systems mitigate multipath interferences with the help of a cyclic prefix (CP) appended between two adjacent OFDM blocks. The length of the CP must bemade longer than channel delay spread to avoid intersymbol interference (ISI). The use of CPs degrades spectrum efficiency significantly, which is a deal price paid in all existing OFDM systems. Motivated to deal with this issue, this paper proposes a CP-free OFDM scheme with successive multipath interference cancellation (SMIC), which does not require CPs and removes ISI before fast Fourier transform (FFT) at a receiver using stored feedback equalization (SFE). The SFE operation leaves a CP gap between adjacentOFDMblocks, and the CP is regenerated with estimated signals. In this way, we convert linearly shifted OFDM blocks induced by multipath propagation back to cyclically shifted OFDM blocks for successful FFT operation. SMIC-OFDM achieves a much higher spectrum efficiency than traditional OFDM owing to the save of CPs in transmission signals. The performance of SMIC-OFDM in terms of the bit error rate, capacity, and computational complexity is compared to that of traditional OFDM to verify the effectiveness of the proposed SMIC-OFDM scheme.
机译:传统的正交频分复用(OFDM)系统借助附加在两个相邻OFDM块之间的循环前缀(CP)减轻多径干扰。 CP的长度必须比信道延迟扩展长,以避免符号间干扰(ISI)。 CP的使用大大降低了频谱效率,这是所有现有OFDM系统中要付出的交易价格。为了解决这个问题,本文提出了一种具有连续多径干扰消除(SMIC)的无CP OFDM方案,该方案不需要CP,并且可以使用存储的反馈均衡(SFE)在接收机进行快速傅立叶变换(FFT)之前消除ISI。 。 SFE操作在相邻OFDM块之间留下CP间隙,并且CP用估计的信号重新生成。这样,我们将多径传播引起的线性移位的OFDM块转换回循环移位的OFDM块,以成功进行FFT操作。由于节省了传输信号中的CP,SMIC-OFDM的频谱效率比传统OFDM高得多。将SMIC-OFDM在误码率,容量和计算复杂度方面的性能与传统OFDM的性能进行了比较,以验证所提出的SMIC-OFDM方案的有效性。

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